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基于两种重组系统的水稻无标记位点特异性基因整合。

Marker-free site-specific gene integration in rice based on the use of two recombination systems.

机构信息

Department of Crop, Soil & Environmental Sciences, University of Arkansas, Fayetteville, AR, USA.

出版信息

Plant Biotechnol J. 2012 Oct;10(8):904-12. doi: 10.1111/j.1467-7652.2012.00715.x. Epub 2012 Jun 12.

DOI:10.1111/j.1467-7652.2012.00715.x
PMID:22686401
Abstract

Transgene integration mediated by heterologous site-specific recombination (SSR) systems into the dedicated genomic sites has been demonstrated in a few different plant species. This approach of plant transformation generates a precise site-specific integration (SSI) structure consisting of a single copy of the transgene construct. As a result, stable transgene expression correlated with promoter strength and gene copy number is observed among independent transgenic lines and faithfully transmitted through subsequent generations. Site-specific integration approaches use selectable marker genes, removal of which is necessary for the implementation of this approach as a biotechnology application. As SSR systems are also excellent tools for excising marker genes from transgene locus, a molecular strategy involving gene integration followed by marker excision, each mediated by a distinct recombination system, was earlier proposed. Experimental validation of this approach is the focus of this work. Using FLPe-FRT system for site-specific gene integration and heat-inducible Cre-lox for marker gene excision, marker-free SSI lines were developed in the first generation itself. More importantly, progeny derived from these lines inherited the marker-free locus, indicating efficient germinal transmission. Finally, as the transgene expression from SSI locus was not altered upon marker excision, this method is suitable for streamlining the production of marker-free SSI lines.

摘要

利用异源位点特异性重组(SSR)系统将转基因整合到专用基因组位点已在几种不同的植物物种中得到证实。这种植物转化方法可产生精确的基因定点整合(SSI)结构,其中包含转基因构建体的单个拷贝。结果,在独立的转基因系中观察到与启动子强度和基因拷贝数相关的稳定转基因表达,并在随后的世代中准确传递。基因定点整合方法使用可选择的标记基因,去除这些标记基因是将该方法作为生物技术应用实施的必要条件。由于 SSR 系统也是从转基因座切除标记基因的极好工具,因此早期提出了一种涉及基因整合和标记基因切除的分子策略,每个步骤都由不同的重组系统介导。本工作的重点是对这种方法进行实验验证。使用 FLPe-FRT 系统进行基因定点整合,利用热诱导 Cre-lox 进行标记基因切除,在第一代就开发出了无标记的 SSI 系。更重要的是,这些系的后代继承了无标记的基因座,表明其具有高效的种系传递能力。最后,由于 SSI 基因座的转基因表达在标记切除后没有改变,因此该方法适用于简化无标记 SSI 系的生产。

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